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IEEE Transactions on Bio-Medical Engineering|September 24, 1999
Automatic detection of conduction block based on time-frequency analysis of unipolar electrogramsF G Evans, J M Rogers, W M Smith, et al.
Annals of Biomedical Engineering|September 23, 1997
Recurrent wavefront morphologies: a method for quantifying the complexity of epicardial activation patternsJ M Rogers, M Usui, B H KenKnight, et al.
Annals of Biomedical Engineering|September 23, 1997
A quantitative framework for analyzing epicardial activation patterns during ventricular fibrillationJ M Rogers, M Usui, B H KenKnight, et al.
Journal of Cardiovascular Electrophysiology|December 30, 1998
Evolution of the organization of epicardial activation patterns during ventricular fibrillationJ Huang, J M Rogers, B H Kenknight, et al.
Journal of Cardiovascular Electrophysiology|February 24, 2001
Fibrillation is more complex in the left ventricle than in the right ventricleJ M Rogers, J Huang, R W Pedoto, et al.
Journal of Cardiovascular Electrophysiology|May 3, 2001
Reduction in atrial defibrillation threshold by a single linear ablation lesionJ B White, P C Fotuhi, R W Pedoto, et al.
Chaos (Woodbury, N.Y.)|June 5, 2003
Spatial organization, predictability, and determinism in ventricular fibrillationP. V. Bayly, B. H. KenKnight, J. M. Rogers, et al.
IEEE Transactions on Bio-Medical Engineering|May 15, 1998
Estimation of conduction velocity vector fields from epicardial mapping dataP V Bayly, B H KenKnight, J M Rogers, et al.
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